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首页> 外文期刊>Journal of the American Chemical Society >Importance of Correlated Motions on the Low Barrier Rotational Potentials of Crystalline Molecular Gyroscopes
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Importance of Correlated Motions on the Low Barrier Rotational Potentials of Crystalline Molecular Gyroscopes

机译:相关运动对晶体分子陀螺仪低势垒旋转势的重要性

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The energetic and structural changes taking place upon rotation of the central phenylene of 1,4-bis(3,3,3-triphenylpropynyl)benzene in the solid state were computed using molecular mechanics calculations. Pseudopolymorphic crystals of a benzene clathrate (1A) and a desolvated form (1B) were analyzed with models that account for varying degrees of freedom within the corresponding lattices. The calculated rotational barriers in a rigid lattice approximation, 78 kcal/mol for 1A and 72 kcal/mol for 1B, are about 5 times greater than those previously measured by variable-temperature ~(13)C CPMAS NMR and quadrupolar echo ~2H NMR line-shape analysis: 12.8 kcal/mol for 1A and 14.6 kcal/mol for 1B. The potential energy barriers calculated with a model that restricts whole body rotation and translational motions but allows for internal rotations give results that are near the experimental free-energy barriers. The calculated barriers for 1A and 1B are 15.5 and 16.2 kcal/mol, respectively. The differences between the rigid and partially relaxed models are attributed to the effect of correlated motions of the lattice and the rotating group, which are evident from the structural analysis of the atomic position data as a function of the dihedral angle of the rotator. The displacements of neighboring molecules near the rotary transition states for 1A and 1B can be as large as 2.7 and 1.1 A, respectively. The displacement and oscillation (C_2) of interpenetrating phenyl rings from neighboring rotors proximal to the event are significant for both 1A and 1B. In addition, 6-fold (C_6) benzene rotations in clathrate 1A were found to be directly correlated to the rotation of the phenylene rotator.
机译:使用分子力学计算,计算了固态1,4-双(3,3,3-三苯基丙炔基)苯的中心亚苯基旋转时发生的能级和结构变化。苯甲酸盐(1A)和去溶剂化形式(1B)的假多晶型晶体用考虑了相应晶格内不同自由度的模型进行了分析。以刚性晶格近似计算得出的旋转势垒(对于1A为78 kcal / mol,对于1B为72 kcal / mol)比之前通过可变温度〜(13)C CPMAS NMR和四极回波〜2H NMR测量的旋转势垒大约5倍。线形分析:1A为12.8 kcal / mol,1B为14.6 kcal / mol。使用限制整个身体旋转和平移运动但允许内部旋转的模型计算的势能垒,其结果接近于实验自由能垒。计算得出的1A和1B势垒分别为15.5 kcal / mol和16.2 kcal / mol。刚性模型和部分松弛模型之间的差异归因于晶格和旋转基团的相关运动的影响,从原子位置数据的结构分析可以看出,该结果是旋转器二面角的函数。 1A和1B的旋转跃迁状态附近的相邻分子的位移分别可以分别为2.7和1.1A。对于事件1A和1B,互穿的苯环从邻近事件的相邻转子的位移和振荡(C_2)均很重要。另外,发现包合物1A中苯的旋转(C_6)的6倍与亚苯基旋转器的旋转直接相关。

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